Improvement of specific capacity of lithium iron phosphate battery by increasing the surface area and electrical conductivity of cathode electrode using graphene foam

石墨烯 阳极 材料科学 磷酸铁锂 阴极 石墨烯泡沫 电极 锂(药物) 电池(电) 锂离子电池 化学工程 纳米技术 电化学 氧化石墨烯纸 化学 医学 功率(物理) 物理 物理化学 量子力学 内分泌学 工程类
作者
Phurida Kokmat,Patiphat MATSAYAMAT,K. Wongrach,Piyaporn Surinlert,Akkawat Ruammaitree
出处
期刊:Journal of metals, materials and minerals 卷期号:33 (4): 1779-1779 被引量:12
标识
DOI:10.55713/jmmm.v33i4.1779
摘要

Lithium iron phosphate (LFP) is widely used as an active material in a cathode electrode for lithium-ion batteries (LIBs). LFP has many remarkable properties such as high working voltage and excellent thermal stability. However, it suffers with slow ion diffusion and low electrical conductivity. Graphene foam has many outstanding properties such as large surface area and great electrical conductivity. These properties are suitable for improving the cathode electrode. In this work, the graphene foam was synthesized by chemical vapor deposition. The cathode electrode was prepared by dropping the LFP on the graphene foam. We found that the specific capacity of battery which contained the LFP between the anode and the graphene foam (LFP/GF) was 23.1 mAh⸳g-1 at 3C, while the specific capacity of battery which contained the graphene foam between the anode and the LFP (GF/LFP) was 112.6 mAh⸳g-1 at 3C. The diffusion coefficients of Li+ of GF/LFP was 9.1 times higher than that of LFP/GF. The specific capacity of GF/LFP was higher than that of LFP/GF at high current density due to the high ion transfer rate which arises from the graphene foam.
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